Page 1935 - Williams Hematology ( PDFDrive )
P. 1935
1910 Part XII: Hemostasis and Thrombosis Chapter 112: Platelet Morphology, Biochemistry, and Function 1911
1587. Pimanda JE, et al: Role of thrombospondin-1 in control of von Willebrand factor mul- 1621. Furihata K, et al: Variation in human platelet glycoprotein VI content modulates
timer size in mice. J Biol Chem 279(20):21439–21448, 2004. glycoprotein VI-specific prothrombinase activity. Arterioscler Thromb Vasc Biol
1588. van Zanten GH, et al: Increased platelet deposition on atherosclerotic coronary arter- 21(11):1857–1863, 2001.
ies. J Clin Invest 93(2):615–632, 1994. 1622. Suzuki H, et al: Intracellular localization of glycoprotein VI in human platelets and its
1589. van der Rest, M, Garrone R: Collagen family of proteins. FASEB J 5(13):2814–2823, surface expression upon activation. Br J Haematol 121(6):904–912, 2003.
1991. 1623. Matsuno K, et al: Inhibition of platelet adhesion to collagen by monoclonal anti-CD36
1590. Ruggeri ZM, Mendolicchio GL: Adhesion mechanisms in platelet function. Circ Res antibodies. Br J Haematol 92(4):960–967, 1996.
100(12):1673–1685, 2007. 1624. Nakamura T, et al: Platelet adhesion to type I collagen fibrils: Role of GPVI in divalent
1591. Clemetson JM, et al: The platelet collagen receptor glycoprotein VI is a member of cation-dependent and -independent adhesion and thromboxane A2 generation. J Biol
the immunoglobulin superfamily closely related to FcalphaR and the natural killer Chem 273:4338–4344, 1998.
receptors. J Biol Chem 274(41):29019–29024, 1999. 1625. Daniel JL, et al: Collagen induces normal signal transduction in platelets deficient in
1592. Ichinohe T, et al: Collagen-stimulated activation of Syk but not c-Src is severely CD36 (platelet glycoprotein IV). Thromb Haemost 71:353–356, 1994.
compromised in human platelets lacking membrane glycoprotein VI. J Biol Chem 1626. az-Ricart M, et al: Platelets lacking functional CD36 (glycoprotein IV) show reduced
272(1):63–68, 1997. adhesion to collagen in flowing whole blood. Blood 82(2):491–496, 1993.
1593. Ishibashi T, et al: Functional significance of platelet membrane glycoprotein p62 1627. Smith JB, et al: Cytosolic calcium as a second messenger for collagen-induced platelet
(GP VI), a putative collagen receptor. Int J Hematol 62(2):107–115, 1995. responses. Biochem J 288(Pt 3):925–929, 1992.
1594. Kehrel B, et al: Glycoprotein VI is a major collagen receptor for platelet activation: 1628. Greenwalt DE, Tandon NN: Platelet shape change and Ca2+ mobilization induced by
It recognizes the platelet-activating quaternary structure of collagen, whereas CD36, collagen, but not thrombin or ADP, are inhibited by phenylarsine oxide. Br J Haematol
glycoprotein IIb/IIIa, and von Willebrand factor do not. Blood 91(2):491–499, 1998. 88(4):830–838, 1994.
1595. Clemetson KJ, Clemetson JM: Platelet receptors, in Platelets, edited by AD Michelson, 1629. Chow TW, et al: Shear stress-induced von Willebrand factor binding to platelet glyco-
pp 117–143. Academic Press, San Diego, 2007. protein Ib initiates calcium influx associated with aggregation. Blood 80(1):113–120,
1596. Horii K, Kahn ML, Herr AB: Structural basis for platelet collagen responses by the 1992.
immune-type receptor glycoprotein VI. Blood 108(3):936–942, 2006. 1630. Gu M, et al: Analysis of the roles of 14–3-3 in the platelet glycoprotein Ib-IX-mediated
1597. Poole A, et al: The Fc receptor gamma-chain and the tyrosine kinase Syk are essential activation of integrin alpha(IIb)beta(3) using a reconstituted mammalian cell expres-
for activation of mouse platelets by collagen. EMBO J 16(9):2333–2341, 1997. sion model. J Cell Biol 147(5):1085–1096, 1999.
1598. Smethurst PA, et al: Identification of the primary collagen-binding surface on human 1631. Zaffran Y, et al: Signaling across the platelet adhesion receptor glycoprotein Ib-IX
glycoprotein VI by site-directed mutagenesis and by a blocking phage antibody. Blood induces alpha IIbbeta 3 activation both in platelets and a transfected Chinese hamster
103(3):903–911, 2004. ovary cell system. J Biol Chem 275(22):16779–16787, 2000.
1599. Chiang TM, Collagen-platelet interaction: Platelet non-integrin receptors. Histol His- 1632. Sullam PM, et al: Physical proximity and functional interplay of the glycoprotein
topathol 14(2):579–585, 1999. Ib-IX-V complex and the Fc receptor FcgammaRIIA on the platelet plasma mem-
1600. Keely PJ, Parise LV: The alpha2beta1 integrin is a necessary co-receptor for collagen- brane. J Biol Chem 273(9):5331–5336, 1998.
induced activation of Syk and the subsequent phosphorylation of phospholipase 1633. Kasirer-Friede A, et al: Signaling through GP Ib-IX-V activates alphaIIbbeta3 inde-
Cgamma2 in platelets. J Biol Chem 271(43):26668–26676, 1996. pendently of other receptors. Blood 103(9):3403–3411, 2004.
1601. Sugiyama T, et al: A novel platelet aggregating factor found in a patient with defec- 1634. Marshall SJ, et al: GPIb-dependent platelet activation is dependent on Src kinases but
tive collagen-induced platelet aggregation and autoimmune thrombocytopenia. Blood not MAP kinase or cGMP-dependent kinase. Blood 103(7):2601–2609, 2004.
69:1712–1720, 1987. 1635. Mangin P, et al: Signaling role for phospholipase C gamma 2 in platelet glycoprotein Ib
1602. Briddon SJ, Watson SP: Evidence for the involvement of p59fyn and p53/56lyn in alpha calcium flux and cytoskeletal reorganization. Involvement of a pathway distinct
collagen receptor signalling in human platelets. Biochem J 338(Pt 1):203–209, 1999. from FcR gamma chain and Fc gamma RIIA. J Biol Chem 278(35):32880–32891, 2003.
1603. Fujii C, et al: Involvement of protein-tyrosine kinase p72syk in collagen-induced sig- 1636. Li Z, et al: A stimulatory role for cGMP-dependent protein kinase in platelet activa-
nal transduction in platelets. Eur J Biochem 226(1):243–248, 1994. tion. Cell 112(1):77–86, 2003.
1604. Shattil SJ, Ginsberg MH, Brugge JS: Adhesive signaling in platelets. Curr Opin Cell Biol 1637. Andrews RK, et al: Interaction of calmodulin with the cytoplasmic domain of the
6(5):695–704, 1994. platelet membrane glycoprotein Ib-IX-V complex. Blood 98(3):681–687, 2001.
1605. Soriano P, et al: Targeted disruption of the c-src proto-oncogene leads to osteopetrosis 1638. Du X, et al: Association of a phospholipase A2 (14–3-3 protein) with the platelet gly-
in mice. Cell 64(4):693–702, 1991. coprotein Ib-IX complex. J Biol Chem 269(28):18287–18290, 1994.
1606. Daniel JL, Dangelmaier C, Smith JB: Evidence for a role for tyrosine phosphorylation 1639. Ohtsuka Y, et al: Chronic oral antigen exposure induces lymphocyte migration in ana-
of phospholipase Cg2 in collagen-induced platelet cytosolic calcium mobilization. phylactic mouse intestine. Pediatr Res 44(5):791–797, 1998.
Biochem J 302:617–622, 1994. 1640. Kasirer-Friede A, et al: Lateral clustering of platelet GP Ib-IX complexes leads
1607. Keely PJ, Parise LV: The alpha2beta1 integrin is a necessary co-receptor for to up-regulation of the adhesive function of integrin alpha IIbbeta 3. J Biol Chem
collagen-induced activation of Syk and the subsequent phosphorylation of phospholi- 277(14):11949–11956, 2002.
pase Cgamma2 in platelets. J Biol Chem 271(43):26668–26676, 1996. 1641. Fox JE, Berndt MC: Cyclic AMP-dependent phosphorylation of glycoprotein Ib
1608. Quek LS, Bolen J, Watson SP: A role for Bruton’s tyrosine kinase (Btk) in platelet acti- inhibits collagen-induced polymerization of actin in platelets. J Biol Chem 264(16):
vation by collagen. Curr Biol 8(20):1137–1140, 1998. 9520–9526, 1989.
1609. Jung SM, Moroi M: Platelet collagen receptor integrin alpha2beta1 activation involves 1642. Phillips DR, Agin PP: Thrombin-induced alterations in the surface structure of the
differential participation of ADP-receptor subtypes P2Y1 and P2Y12 but not intracel- human platelet plasma membrane. Ser Haematol 6(3):292–310, 1973.
lular calcium change. Eur J Biochem 268(12):3513–3522, 2001. 1643. Ni H, et al: Increased thrombogenesis and embolus formation in mice lacking glyco-
1610. Wang Z, Leisner TM, Parise LV: Platelet alpha2beta1 integrin activation: Contri- protein V. Blood 98(2):368–373, 2001.
bution of ligand internalization and the alpha2-cytoplasmic domain. Blood 102(4): 1644. Rink TJ: Cytosolic calcium in platelet activation. Experientia 44(2):97–100, 1988.
1307–1315, 2003. 1645. Kovacs T, et al: All three splice variants of the human sarco/endoplasmic reticulum
1611. Bertoni A, et al: Relationships between Rap1b, affinity modulation of integrin Ca2+-ATPase 3 gene are translated to proteins: A study of their co-expression in
alpha IIbbeta 3, and the actin cytoskeleton. J Biol Chem 277(28):25715–25721, 2002. platelets and lymphoid cells. Biochem J 358(Pt 3):559–568, 2001.
1612. Larson MK, et al: Identification of P2Y12-dependent and -independent mechanisms of 1646. Hassock SR, et al: Expression and role of TRPC proteins in human platelets: Evi-
glycoprotein VI-mediated Rap1 activation in platelets. Blood 101(4):1409–1415, 2003. dence that TRPC6 forms the store-independent calcium entry channel. Blood 100(8):
1613. Auger JM, et al: C-Cbl negatively regulates platelet activation by glycoprotein VI. J 2801–2811, 2002.
Thromb Haemost 1(11):2419–2426, 2003. 1647. Roberts DE, McNicol A, Bose R: Mechanism of collagen activation in human platelets.
1614. Locke D, et al: Fc Rgamma-independent signaling by the platelet collagen receptor J Biol Chem 279:19421–19430, 2004.
glycoprotein VI. J Biol Chem 278(17):15441–15448, 2003. 1648. Jones GD, Gear AR: Subsecond calcium dynamics in ADP- and thrombin-stimulated
1615. Qiao J, et al: An acquired defect associated with abnormal signaling of the platelet platelets: A continuous-flow approach using indo-1. Blood 71(6):1539–1543, 1988.
collagen receptor glycoprotein VI. Acta Haematol 128(4):233–241, 2012. 1649. Rybak ME, Renzulli LA: Effect of calcium channel blockers on platelet GPIIb-IIIa as a
1616. Inoue O, et al: Integrin alpha2beta1 mediates outside-in regulation of platelet calcium channel in liposomes: Comparison with effects on the intact platelet. Thromb
spreading on collagen through activation of Src kinases and PLCgamma2. J Cell Biol Haemost 67(1):131–136, 1992.
160(5):769–780, 2003. 1650. Dessen A, et al: Crystal structure of human cytosolic phospholipase A2 reveals a novel
1617. Chen H, Kahn ML: Reciprocal signaling by integrin and nonintegrin receptors during topology and catalytic mechanism. Cell 97(3):349–360, 1999.
collagen activation of platelets. Mol Cell Biol 23(14):4764–4777, 2003. 1651. Khan WA, et al: Selective regulation of protein kinase C isoenzymes by oleic acid in
1618. Galt SW, et al: Outside-in signals delivered by matrix metalloproteinase-1 regulate human platelets. J Biol Chem 268(7):5063–5068, 1993.
platelet function. Circ Res 90(10):1093–1099, 2002. 1652. Scholey JM, Taylor KA, and J. Kendrick-Jones, Regulation of non-muscle myosin
1619. Best D, et al: GPVI levels in platelets: Relationship to platelet function at high shear. assembly by calmodulin-dependent light chain kinase. Nature 287(5779):233–235,
Blood 102(8):2811–2818, 2003. 1980.
1620. Chen H, et al: The platelet receptor GPVI mediates both adhesion and signal- 1653. Naik MU, Naik UP: Calcium-and integrin-binding protein regulates focal adhe-
ing responses to collagen in a receptor density-dependent fashion. J Biol Chem sion kinase activity during platelet spreading on immobilized fibrinogen. Blood
277(4):3011–3019, 2002. 102(10):3629–3636, 2003.
Kaushansky_chapter 112_p1829-1914.indd 1910 17/09/15 3:30 pm

